Sarmiento Janice, Wallis Robert H, Ning Terri, Marandi Leili, Chao Gary, Veillette André, Lernmark Åke, Paterson Andrew D, Poussier Philippe
Department of Immunology, Faculty of Medicine, University of Toronto, Toronto, Ontario M5S 1A8, Canada; Biological Sciences Platform, Sunnybrook Research Institute, Toronto, Ontario M4N 3M5, Canada;
Biological Sciences Platform, Sunnybrook Research Institute, Toronto, Ontario M4N 3M5, Canada;
J Immunol. 2015 Jan 15;194(2):615-29. doi: 10.4049/jimmunol.1302689. Epub 2014 Dec 12.
The R620W variant of PTPN22 is one of the major genetic risk factors for several autoimmune disorders including type 1 diabetes (T1D) in humans. In the BioBreeding T1D-prone (BBDP) rat, a single nucleotide polymorphism in Ptpn22 results in an A629T substitution immediately C-terminal to the aliphatic residues central to the Ptpn22-C-terminal Src kinase interaction. This variant exhibits a 50% decrease in C-terminal Src kinase binding affinity and contributes to T cell hyperresponsiveness. Examination of BBDP sublines congenic for the Iddm26.2 locus that includes Ptpn22 has not only shown an expansion of activated CD4(+)25(+) T lymphocytes in animals homozygous for the BBDP allele, consistent with enhanced TCR-mediated signaling, but also a decrease in their proportion of peripheral Foxp3(+) regulatory T cells. Furthermore, clinical assessment of both an F2(BBDP × ACI.1u.Lyp) cohort and Iddm26.2 congenic BBDP sublines has revealed an association of Ptpn22 with T1D. Specifically, in both cases, T1D risk is significantly greater in BBDP Ptpn22 homozygous and heterozygous animals. These findings are consistent with a role for rat Ptpn22 allelic variation within Iddm26.2 in the regulation of T cell responses, and subsequently the risk for development of T1D.
PTPN22的R620W变体是人类多种自身免疫性疾病(包括1型糖尿病,T1D)的主要遗传风险因素之一。在易患T1D的BioBreeding(BBDP)大鼠中,Ptpn22中的一个单核苷酸多态性导致A629T取代,该取代位于Ptpn22 C末端与Src激酶相互作用核心的脂肪族残基的紧邻C末端位置。该变体的C末端Src激酶结合亲和力降低了50%,并导致T细胞反应过度。对包含Ptpn22的Iddm26.2位点的BBDP同基因亚系进行检测,不仅发现BBDP等位基因纯合动物中活化的CD4(+)25(+) T淋巴细胞数量增加,这与TCR介导的信号增强一致,还发现其外周Foxp3(+)调节性T细胞比例降低。此外,对F2(BBDP × ACI.1u.Lyp)队列和Iddm26.2同基因BBDP亚系的临床评估均显示Ptpn22与T1D有关联。具体而言,在这两种情况下,BBDP Ptpn22纯合和杂合动物患T1D的风险显著更高。这些发现与Iddm26.2内大鼠Ptpn22等位基因变异在调节T细胞反应以及随后T1D发生风险中的作用一致。